English

Exotic tetraquark states with $J^{PC}=0^{+-}$

High Energy Physics - Phenomenology 2019-01-23 v2 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

We use the Laplace/Borel sum rules (LSR) and the finite energy/local duality sum rules (FESR) to investigate the non-strange uduˉdˉud\bar u\bar d and hidden-strange usuˉsˉus\bar u\bar s tetraquark states with exotic quantum numbers JPC=0+J^{PC}=0^{+-} . We systematically construct all eight possible tetraquark currents in this channel without covariant derivative operator. Our analyses show that the uduˉdˉud\bar u\bar d systems have good behaviour of sum rule stability and expansion series convergence in both the LSR and FESR analyses, while the LSR for the usuˉsˉus\bar u\bar s states do not associate with convergent OPE series in the stability regions and only the FESR can provide valid results. We give the mass predictions 1.43±0.091.43\pm0.09 GeV and 1.54±0.121.54\pm0.12 GeV for the uduˉdˉud\bar u\bar d and usuˉsˉus\bar u\bar s tetraquark states, respectively. Our results indicate that the 0+0^{+-} isovector usuˉsˉus\bar u\bar s tetraquark may only decay via weak interaction mechanism, e.g. XusuˉsˉKππX_{us\bar{u}\bar{s}}\to K\pi\pi, since its strong decays are forbidden by kinematics and the symmetry constraints on the exotic quantum numbers. It is predicted to be very narrow, if it does exist. The 0+0^{+-} isoscalar usuˉsˉus\bar u\bar s tetraquark is also predicted to be not very wide because its dominate decay mode XusuˉsˉϕππX_{us\bar{u}\bar{s}}\to\phi\pi\pi is in PP-wave.

Keywords

Cite

@article{arxiv.1811.03333,
  title  = {Exotic tetraquark states with $J^{PC}=0^{+-}$},
  author = {Yi-Chao Fu and Zhuo-Ran Huang and Zhu-Feng Zhang and Wei Chen},
  journal= {arXiv preprint arXiv:1811.03333},
  year   = {2019}
}

Comments

11 pages, 4 figures. Typos corrected